Patterns of protein carbonylation following oxidative stress in wild-type and sigB Bacillus subtilis cells
暂无分享,去创建一个
[1] I. von Ossowski,et al. Nucleotide sequence of Escherichia coli katE, which encodes catalase HPII , 1991, Journal of bacteriology.
[2] E. Stadtman,et al. Protein Oxidation in Aging, Disease, and Oxidative Stress* , 1997, The Journal of Biological Chemistry.
[3] T. Reinheckel,et al. Adaptation of protein carbonyl detection to the requirements of proteome analysis demonstrated for hypoxia/reoxygenation in isolated rat liver mitochondria. , 2000, Archives of biochemistry and biophysics.
[4] M. Hecker,et al. Temporal activation of beta-glucanase synthesis in Bacillus subtilis is mediated by the GTP pool. , 1993, Journal of general microbiology.
[5] M. Hecker,et al. Expression of the ςB-Dependent General Stress Regulon Confers Multiple Stress Resistance inBacillus subtilis , 1999 .
[6] T. Nyström,et al. Oxidative Stress Defense and Deterioration of Growth-arrestedEscherichia coli Cells* , 1999, The Journal of Biological Chemistry.
[7] J. Hoheisel,et al. Global Analysis of the General Stress Response ofBacillus subtilis , 2001, Journal of bacteriology.
[8] J. Bernhardt,et al. Specific and general stress proteins in Bacillus subtilis--a two-deimensional protein electrophoresis study. , 1997, Microbiology.
[9] D. Bol,et al. Characterization of an inducible oxidative stress system in Bacillus subtilis , 1990, Journal of bacteriology.
[10] A J Rivett. Regulation of intracellular protein turnover: covalent modification as a mechanism of marking proteins for degradation. , 1986, Current topics in cellular regulation.
[11] J. Bernhardt,et al. A comprehensive two‐dimensional map of cytosolic proteins of Bacillus subtilis , 2001, Electrophoresis.
[12] W. Haldenwang,et al. The Bacillus subtilis rsbU gene product is necessary for RsbX-dependent regulation of sigma B , 1995, Journal of bacteriology.
[13] S. Engelmann,et al. Analysis of the induction of general stress proteins of Bacillus subtilis. , 1994, Microbiology.
[14] S. Engelmann,et al. Expression of a stress- and starvation-induced dps/pexB-homologous gene is controlled by the alternative sigma factor sigmaB in Bacillus subtilis , 1997, Journal of bacteriology.
[15] S. Engelmann,et al. Cloning, nucleotide sequence, and regulation of katE encoding a sigma B-dependent catalase in Bacillus subtilis , 1995, Journal of bacteriology.
[16] R. Kolter,et al. A novel DNA-binding protein with regulatory and protective roles in starved Escherichia coli. , 1992, Genes & development.
[17] K. Davies. Protein damage and degradation by oxygen radicals. I. general aspects. , 1987, The Journal of biological chemistry.
[18] S. Engelmann,et al. General and oxidative stress responses in Bacillus subtilis: cloning, expression, and mutation of the alkyl hydroperoxide reductase operon , 1996, Journal of bacteriology.
[19] M. Hecker,et al. Global Characterization of Disulfide Stress in Bacillus subtilis , 2003, Journal of bacteriology.
[20] I. Fridovich,et al. Assay of metabolic superoxide production in Escherichia coli. , 1991, The Journal of biological chemistry.
[21] D. McConnell,et al. Oxidative stress and growth temperature in Bacillus subtilis , 1987, Journal of bacteriology.
[22] T. Nyström,et al. Bacterial senescence: stasis results in increased and differential oxidation of cytoplasmic proteins leading to developmental induction of the heat shock regulon. , 1998, Genes & development.
[23] S. Engelmann,et al. Impaired oxidative stress resistance of Bacillus subtilis sigB mutants and the role of katA and katE. , 1996, FEMS microbiology letters.
[24] E. Stadtman,et al. Oxidation of free amino acids and amino acid residues in proteins by radiolysis and by metal-catalyzed reactions. , 1993, Annual review of biochemistry.
[25] J. Helmann,et al. Coordinate regulation of Bacillus subtilis peroxide stress genes by hydrogen peroxide and metal ions. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[26] M. Hecker,et al. Expression of the sigmaB-dependent general stress regulon confers multiple stress resistance in Bacillus subtilis. , 1999, Journal of bacteriology.
[27] S. Farr,et al. Oxidative stress responses in Escherichia coli and Salmonella typhimurium. , 1991, Microbiological reviews.
[28] R. Levine. Oxidative modification of glutamine synthetase. I. Inactivation is due to loss of one histidine residue. , 1983, The Journal of biological chemistry.
[29] C. Price,et al. Stress-induced activation of the sigma B transcription factor of Bacillus subtilis , 1993, Journal of bacteriology.
[30] J. Helmann,et al. OhrR Is a Repressor of ohrA, a Key Organic Hydroperoxide Resistance Determinant in Bacillus subtilis , 2001, Journal of bacteriology.
[31] J. Helmann,et al. Mutation of the Bacillus subtilis alkyl hydroperoxide reductase (ahpCF) operon reveals compensatory interactions among hydrogen peroxide stress genes , 1996, Journal of bacteriology.
[32] J. Helmann,et al. Bacillus subtilis contains multiple Fur homologues: identification of the iron uptake (Fur) and peroxide regulon (PerR) repressors , 1998, Molecular microbiology.
[33] A. J.. Protein Damage and Degradation by Oxygen Radicals , 2001 .
[34] M. Hecker,et al. General stress response of Bacillus subtilis and other bacteria. , 2001, Advances in microbial physiology.
[35] M. Hecker,et al. Non‐specific, general and multiple stress resistance of growth‐restricted Bacillus subtilis cells by the expression of the σB regulon , 1998, Molecular microbiology.
[36] R. Levine. Oxidative modification of glutamine synthetase. II. Characterization of the ascorbate model system. , 1983, The Journal of biological chemistry.
[37] E. Shacter,et al. Differential susceptibility of plasma proteins to oxidative modification: examination by western blot immunoassay. , 1994, Free radical biology & medicine.
[38] E. Stadtman,et al. Carbonyl assays for determination of oxidatively modified proteins. , 1994, Methods in enzymology.
[39] Rivett Aj,et al. Regulation of Intracellular Protein Turnover: Covalent Modification as a Mechanism of Marking Proteins for Degradation , 1986 .
[40] C. Price,et al. General Stress Response , 2002 .
[41] D. McConnell,et al. Relationship among oxidative stress, growth cycle, and sporulation in Bacillus subtilis , 1987, Journal of bacteriology.
[42] W. Schafer,et al. Genetic studies of a secondary RNA polymerase sigma factor in Bacillus subtilis , 1987, Journal of bacteriology.